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首页> 外文期刊>The Journal of Chemical Physics >EVIDENCE FOR HEAVY ATOM LARGE AMPLITUDE MOTIONS IN RG-CYCLOPROPANE VAN-DER-WAALS COMPLEXES (RG=NE, AR, KR) FROM ROTATION-TUNNELING SPECTROSCOPY
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EVIDENCE FOR HEAVY ATOM LARGE AMPLITUDE MOTIONS IN RG-CYCLOPROPANE VAN-DER-WAALS COMPLEXES (RG=NE, AR, KR) FROM ROTATION-TUNNELING SPECTROSCOPY

机译:旋转隧穿光谱法研究RG-环丙烷范德华配合物(RG = NE,AR,KR)中的大原子大运动

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Rotation-tunneling spectra of the van der Waals complex Ne-cyclopropane, and pure rotational spectra of Ar-cyclopropane and Kr-cyclopropane, were measured with a Fourier transform microwave spectrometer in the frequency range from 4-19 GHz. The observed transitions are all of a-type and are in accord with those of prolate symmetric top molecules where the rare gas atom is positioned on the C-3 axis of the cyclopropane subunit above its symmetry plane. Altogether transitions of five isotopomers of the Ne complex with J values ranging from 0 to 4 and K values from 0 to 1 were measured. Three isotopomers of the Ar complex (J from 1 to 5 and K from 0 to 2) and nine isotopomers of the Kr complex (J from 1 to 8 and K from 0 to 2) were observed. Effective separations between the center-of-mass of cyclopropane and the rare gas atoms were obtained from the ground state rotational constants and were found to be 3.673, 3.802, and 3.906 Angstrom for the Ne-, Ar-, and Kr-containing complexes, respectively. The derived centrifugal distortion constants indicate that the complexes are comparatively rigid in the radial coordinate. Transitions of two isomers were observed for complexes that contain monodeuterated cyclopropane. The intensities of transitions of the D-bonded species were considerably higher compared to those of the H-bonded isomers indicating that the angular mellon of the rare gas atom is much less restricted. In the case of the parent Ne-cyclopropane complex, and its Ne-22- and mono C-13-isotomers, all transitions appeared as doublers, This is attributed to a tunneling internal rotation motion of the cyclopropane unit within the complex. (C) 1997 American Institute of Physics. [References: 44]
机译:用傅立叶变换微波光谱仪在4-19 GHz的频率范围内测量范德华络合物Ne-环丙烷的旋转隧道光谱以及Ar-环丙烷和Kr-环丙烷的纯旋转光谱。观察到的跃迁全部为a型,并与那些长对称对称的顶部分子相一致,其中稀有气体原子位于其对称平面上方的环丙烷亚基的C-3轴上。测量了Ne络合物的五个同位异构体的跃迁,其J值在0到4之间,K值在0到1之间。观察到Ar络合物的三个同位异构体(J为1至5,K为0至2)和Kr络合物的九个同位异构体(J为1至8,K为0至2)。从基态旋转常数获得了环丙烷与稀有气体原子的质心之间的有效间距,对于含Ne,Ar和Kr的配合物,有效间距为3.673、3.802和3.906埃,分别。推导的离心变形常数表明配合物在径向坐标上相对刚性。对于含有单氘代环丙烷的配合物,观察到两种异构体的转变。与氢键键合异构体的跃迁强度相比,与氢键键合异构体的跃迁强度要高得多,这表明稀有气体原子的角melon受到的限制要小得多。在母体Ne-环丙烷配合物及其Ne-22-和单C-13-异构体的情况下,所有跃迁均以倍增形式出现。这归因于配合物中环丙烷单元的隧穿内部旋转运动。 (C)1997美国物理研究所。 [参考:44]

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